State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
ACS Nano. 2023 Jan 10;17(1):12-19. doi: 10.1021/acsnano.2c09299. Epub 2022 Dec 29.
As one of the major pollutants in the air, ambient fine particles are gaining considerable attention in terms of public health concerns. Significant progress has been achieved in recent years in understanding the biological effects and mechanisms of ambient fine particles. The airborne particles can enter the human body through various pathways and translocate to a range of different organs and further stay in these organs for extended periods. Current studies are making substantial achievements, while many challenges remain. On one hand, the whole picture of the concurrent exposure pathways and the translocation of particles in the human body should be explored, requiring technological advances and systematic biobanking of human samples for analysis. On the other hand, the correlation between the environmental exposure concentration of ambient particles and internal fate (i.e., dose, distribution patterns, and kinetics) of invasive particles needs to be investigated. Moreover, the biotransformation of particles in vivo should be considered, and more information is needed to differentiate exogenous particles from biological macromolecules and biogenically formed particles. We recapitulate the current knowledge gaps in understanding the fate of exogenous ambient fine particles in extra-pulmonary organs of the human body and the related biological effects and also propose future research directions to support both fundamental studies and policy making.
作为空气中的主要污染物之一,环境细颗粒物(ambient fine particles)引起了人们对公共健康问题的极大关注。近年来,人们在理解环境细颗粒物的生物效应和作用机制方面取得了重大进展。空气中的颗粒可以通过各种途径进入人体,并转移到一系列不同的器官中,并在这些器官中停留很长时间。目前的研究正在取得实质性的成果,但仍面临许多挑战。一方面,应该探索颗粒在人体中的同时暴露途径和迁移的全貌,这需要技术进步和对人体样本进行系统的生物库分析。另一方面,需要研究环境暴露浓度与侵入性颗粒的体内命运(即剂量、分布模式和动力学)之间的相关性。此外,还需要考虑颗粒在体内的生物转化,需要更多的信息来区分外源性颗粒与生物大分子和生物形成的颗粒。我们总结了目前在理解人体肺外器官中外源环境细颗粒物的命运以及相关生物效应方面的知识差距,并提出了未来的研究方向,以支持基础研究和决策制定。